The approach to equilibrium of a nondegenerate quantum system involves the damping of microscopic population oscillations, and, additionally, the bringing about of detailed balance, i.e. the achievement of the correct Boltzmann factors relating the populations. These two are separate effects of interaction with a reservoir. One stems from the randomization of phases and the other from phase space considerations. Even the meaning of the word ‘phase’ differs drastically in the two instances in which it appears in the previous statement. In the first case it normally refers to quantum phases whereas in the second it describes the multiplicity of reservoir states that corresp...
We explore excitonic energy transfer dynamics in a molecular dimer system coupled to bo...
この論文は国立情報学研究所の電子図書館事業により電子化されました。In conclusion, by assuming that the initial state is prepared as a ...
The primary goals of this dissertaion are to describe and elucidate a new formalism to study the out...
A pure quantum state of large number N of oscillators, interacting via harmonic coupling, evolves su...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
The goal of this note is threefold. I would like to explain some recent (1995{) developments in the...
We analyze the dynamics of a quantum mechanical system in interaction with a reservoir when the init...
We study a small quantum system (e.g. a simplified model for an atom or molecule) inter-acting with ...
This dissertation is a study of the theoretical framework of the practical as well as fundamental pr...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
We analyze the dynamics of a quantum mechanical system in interaction with a reservoir when the init...
A consistent theory of non-equilibrium thermodynamics for Markovian open quantum systems has been de...
We analyze the dynamics of a quantum mechanical system in interaction with a reservoir when the init...
Open AccessWe study the dynamics of the quantum phase distribution associated with the reduced densi...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...
We explore excitonic energy transfer dynamics in a molecular dimer system coupled to bo...
この論文は国立情報学研究所の電子図書館事業により電子化されました。In conclusion, by assuming that the initial state is prepared as a ...
The primary goals of this dissertaion are to describe and elucidate a new formalism to study the out...
A pure quantum state of large number N of oscillators, interacting via harmonic coupling, evolves su...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
The goal of this note is threefold. I would like to explain some recent (1995{) developments in the...
We analyze the dynamics of a quantum mechanical system in interaction with a reservoir when the init...
We study a small quantum system (e.g. a simplified model for an atom or molecule) inter-acting with ...
This dissertation is a study of the theoretical framework of the practical as well as fundamental pr...
The Schroedinger equation is used to describe a quantum system evolving in time by a non-Hermitian H...
We analyze the dynamics of a quantum mechanical system in interaction with a reservoir when the init...
A consistent theory of non-equilibrium thermodynamics for Markovian open quantum systems has been de...
We analyze the dynamics of a quantum mechanical system in interaction with a reservoir when the init...
Open AccessWe study the dynamics of the quantum phase distribution associated with the reduced densi...
Abstract. We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to...
We explore excitonic energy transfer dynamics in a molecular dimer system coupled to bo...
この論文は国立情報学研究所の電子図書館事業により電子化されました。In conclusion, by assuming that the initial state is prepared as a ...
The primary goals of this dissertaion are to describe and elucidate a new formalism to study the out...